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Openai/67d9ce0c-64a4-8006-9fa5-0272ee2e5770
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===== 1. Determine the Total Capacity: - With an effective area of 1,040,000,000 m² and assuming 200 W/m² panel capacity (standard for high-efficiency panels): Total Capacity=Effective Area×Panel Capacity\text{Total Capacity} = \text{Effective Area} \times \text{Panel Capacity}Total Capacity=Effective Area×Panel Capacity Total Capacity=1,040,000,000 m2×200 W/m2\text{Total Capacity} = 1,040,000,000 \, \text{m}^2 \times 200 \, \text{W/m}^2Total Capacity=1,040,000,000m2×200W/m2 Total Capacity=208,000,000,000 W=208 GW\text{Total Capacity} = 208,000,000,000 \, \text{W} = 208 \, \text{GW}Total Capacity=208,000,000,000W=208GW ===== # Total Cost per Watt: - Combining the costs of panels, BoS, and installation: Total Cost per Watt=$0.35+$0.85+$0.40=$1.60 per watt\text{Total Cost per Watt} = \$0.35 + \$0.85 + \$0.40 = \$1.60 \, \text{per watt}Total Cost per Watt=$0.35+$0.85+$0.40=$1.60per watt # Total Investment for Solar Panels and Installation: Total Investment=Total Capacity×Total Cost per Watt\text{Total Investment} = \text{Total Capacity} \times \text{Total Cost per Watt}Total Investment=Total Capacity×Total Cost per Watt Total Investment=208,000,000,000 W×$1.60 per watt\text{Total Investment} = 208,000,000,000 \, \text{W} \times \$1.60 \, \text{per watt}Total Investment=208,000,000,000W×$1.60per watt Total Investment=$332,800,000,000≈$333 billion\text{Total Investment} = \$332,800,000,000 \approx \$333 \, \text{billion}Total Investment=$332,800,000,000≈$333billion
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